(a) An 8000 V, 50 Hz, single-phase, transmission line consists of two hard-drawn aluminum conductors with a radius of 2 cm spaced 1.2 m apart. If the transmission line is 30 km long and the temperature of the conductors is 20°C, resistivity Aluminium = 2.83×10-³m,and temperature constant 228.1 °C, calculate, (i) the series resistance per kilometer of this line? (ii) the series inductance per kilometer of this line? (iii) the shunt capacitance per kilometer of this line? [3] (iv) the total series reactance of this line?

Power System Analysis and Design (MindTap Course List)
6th Edition
ISBN:9781305632134
Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Publisher:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Chapter4: Transmission Line Parameters
Section: Chapter Questions
Problem 4.23P
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QUESTION 2
(a) An 8000 V, 50 Hz, single-phase, transmission line consists of two hard-drawn aluminum
conductors with a radius of 2 cm spaced 1.2 m apart. If the transmission line is 30 km long
and the temperature of the conductors is 20°C, resistivity Aluminium = 2.83×10-³m ,and
temperature constant 228.1 °C, calculate,
(1) the series resistance per kilometer of this line?
(ii) the series inductance per kilometer of this line?
(iii) the shunt capacitance per kilometer of this line?
[3]
(iv) the total series reactance of this line?
(v) the total shunt admittance of this line?
(vi) the corresponding shunt capacitive reactance
Transcribed Image Text:QUESTION 2 (a) An 8000 V, 50 Hz, single-phase, transmission line consists of two hard-drawn aluminum conductors with a radius of 2 cm spaced 1.2 m apart. If the transmission line is 30 km long and the temperature of the conductors is 20°C, resistivity Aluminium = 2.83×10-³m ,and temperature constant 228.1 °C, calculate, (1) the series resistance per kilometer of this line? (ii) the series inductance per kilometer of this line? (iii) the shunt capacitance per kilometer of this line? [3] (iv) the total series reactance of this line? (v) the total shunt admittance of this line? (vi) the corresponding shunt capacitive reactance
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